Vibrating Fat Eliminating Device With Detachable Chair
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Solution Overview
Problem
Conventional vibrating fat eliminating devices are difficult for individuals with weak lower limbs or the elderly to use effectively due to the requirement of maintaining a standing posture for extended periods, leading to reduced training or massage effectiveness.
Innovation Solution
A vibrating fat eliminating device with a detachable chair body and positioning unit that allows users to sit, enabling efficient vibration transmission and providing different training or massage modes by connecting the chair body to the vibrating mainbody via a fixing notch and through hole, reducing assembly complexity and enhancing user safety.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If users use conventional vibrating fat eliminating devices, then vibration training or massage effects are achieved, but users with weak lower limbs or elderly people cannot maintain standing posture for long time, reducing training effectiveness
Solution Approach 1:
The device is divided into two main segments: a vibrating main body and a detachable chair body. This segmentation allows users to choose between standing vibration mode and seated vibration mode, making the device accessible to both able-bodied users and those with mobility limitations, thereby improving training effectiveness for a broader population without compromising ease of operation.
2Ease of operation
If a detachable chair body is added to the vibrating device, then usability for elderly and mobility-impaired users is improved, but device complexity increases
Solution Approach 1:
By segmenting the device into a vibrating main body and a detachable chair body, the design adds functionality for mobility-impaired users without permanently increasing overall complexity. The detachable nature means the chair body can be stored or removed when not needed, keeping the device relatively simple for able-bodied users while providing enhanced usability when required.
Solution Approach 2:
The chair body is designed to be dynamically attachable and detachable rather than permanently fixed. This dynamic configuration allows the device to adapt its complexity level based on user needs, maintaining simplicity for standard use while providing enhanced functionality when accessibility is required.
3Ease of manufacture
If the chair body is detachably connected to the vibrating mainbody, then assembly and disassembly become easier, but connection stability may be compromised
Solution Approach 1:
The positioning unit incorporates positioning notches and corresponding positioning protrusions that are pre-configured during manufacturing. These pre-designed geometric features automatically guide and align the chair body with the vibrating main body during assembly, ensuring proper positioning and stable connection without requiring complex assembly procedures or tools.
Solution Approach 2:
The positioning notches and protrusions utilize complementary curved or non-linear geometric shapes that provide self-aligning characteristics during assembly. This curved geometry ensures that the chair body naturally settles into the correct position when attached, enhancing connection stability while maintaining ease of assembly through intuitive alignment.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
Enables users to perform body training or massage without prolonged standing, improving the device's usability and effectiveness for individuals with mobility issues, while maintaining high vibration transmission and safety standards.
Implementation Method 1
the conventional vibrating fat eliminating devices use vibration to achieve the body training or massage effects
Data Source
AI summary
A vibrating fat eliminating device includes a vibrating mainbody, a chair body and a positioning unit. The vibrating mainbody includes a fixing notch and an upper surface, wherein the fixing notch is disposed on the upper surface. The chair body is detachably disposed on the vibrating mainbody and includes a supporting frame and a cushion, wherein the supporting frame is disposed on the upper surface, the cushion is disposed on the supporting frame, and the supporting frame includes a connecting portion having a through hole. The positioning unit passes through the through hole and is connected to the fixing notch correspondingly, wherein the chair body is detachably disposed on the upper surface via the positioning unit.


